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牛胚胎干细胞。

Bovine embryonic stem cells.

作者信息

Roach Marsha, Wang Li, Yang Xiangzhong, Tian X Cindy

机构信息

Pfizer Global Research and Development, Genetically Modified Models CoE, Groton, Connecticut, USA.

出版信息

Methods Enzymol. 2006;418:21-37. doi: 10.1016/S0076-6879(06)18002-7.

Abstract

Bovine embryonic stem (bES) cell lines reported to date vary in morphology and marker expression, such as alkaline phosphatase (ALPL), stage-specific embryonic antigen 4 (SSEA4), and octamer-binding transcription factor-4 (OCT4), that normally are associated with the undifferentiated, pluripotent state. This chapter introduces the methods of isolating and maintaining bovine ES cells. These bovine ES cells grow in large, multicellular colonies resembling the mouse ES and embryonic germ (EG) cells, as well as human EG cells. Throughout the culture period, most of the cells within the colonies stain positive for ALPL and cell surface markers SSEA4 and OCT4. The staining patterns of the bES cells are identical to those of the blastocysts fertilized in vitro (IVF), yet different from most previously reported bovine ES cell lines, which are either negative or not detected. After undifferentiated culture for more than 1 year, these cells maintained the ability to differentiate into embryoid bodies and derivatives of all three EG layers, thus demonstrating their pluripotency. In addition to bES from IVF, this chapter introduces two methods of generating blastocyst stage embryos other than in vitro fertilization, which are parthenogenetic activation and somatic cell nuclear transfer for the potential application of generation "patient-specific" ES cells.

摘要

迄今为止报道的牛胚胎干细胞(bES)系在形态和标志物表达方面存在差异,如碱性磷酸酶(ALPL)、阶段特异性胚胎抗原4(SSEA4)和八聚体结合转录因子4(OCT4),这些通常与未分化的多能状态相关。本章介绍分离和维持牛胚胎干细胞的方法。这些牛胚胎干细胞以大的多细胞集落形式生长,类似于小鼠胚胎干细胞和胚胎生殖(EG)细胞,以及人类EG细胞。在整个培养期间,集落内的大多数细胞对ALPL以及细胞表面标志物SSEA4和OCT4染色呈阳性。牛胚胎干细胞的染色模式与体外受精(IVF)的囊胚相同,但与大多数先前报道的牛胚胎干细胞系不同,后者要么呈阴性,要么未检测到。经过1年多的未分化培养后,这些细胞保持了分化为胚状体和所有三个胚层衍生物的能力,从而证明了它们的多能性。除了来自体外受精的牛胚胎干细胞外,本章还介绍了除体外受精外产生囊胚期胚胎的两种方法,即孤雌激活和体细胞核移植,用于潜在地生成“患者特异性”胚胎干细胞。

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